Master\u2019s Degree in Biomedical Engineering \u2013 Two Year Duration
\nAt the master\u2019s level, biomedical engineering students focus on a particular track or focus area. They may also be required to complete some prerequisite and master\u2019s core courses.

\n

Possible prerequisites:

\n\n

Typical master\u2019s core courses:

\n\n

Imaging Track sample courses:

\n\n

Instrumentation Track sample courses:

\n\n

Tissue Engineering Track sample courses:

\n\n

Holders of a Master\u2019s Degree in Biomedical Engineering typically go on to occupy senior positions in the biomedical/bioengineering fields.

\n

Doctoral Degree in Biomedical Engineering \u2013 Four to Six Year Duration
\nThe focus of the doctoral degree program in biomedical engineering is research intensive training in a laboratory or clinical setting. Doctoral candidates work in collaboration with both faculty members and clinicians. In addition to completing a specified number of credits beyond their master\u2019s degree, they are required to pass an oral and written qualifying examination and successfully defend their doctoral dissertation, which must be based on individual and original research.

\n

Biomedical engineering doctoral graduates often go on to conduct advanced research and/or assume leadership roles in the field.

", "display_order": 2, "created_at": "2019-08-29T17:56:38.296494-07:00", "updated_at": "2021-12-08T14:15:41.988487-08:00"}, {"degree_id": 80, "page": 1, "title": "Degrees Similar to Biomedical Engineering", "summary_markdown": "**[Biotechnology](/degrees/biotechnology-degree/)** \r\nMajors in this field study engineering and the life sciences to create new products \u2013 such as vaccines, medicines, growth hormones for plants, and food additives \u2013 for the agricultural, industrial, and environmental industries. \r\n\r\n**Engineering Technology** \r\nMajors in this field study many of the engineering concepts and design skills that engineering majors learn. Their focus, though, is more on applied design and is less theoretically and mathematically oriented. As part of an engineering team, a technologist might be involved in product development and testing or designing a programming language to improve a system designed by an engineer. \r\n\r\n**Materials / [Manufacturing Engineering](/degrees/manufacturing-engineering-degree/)** \r\nThe focus of this major is the study of metals, ceramics, and polymers like glass, plastic, and rubber, with the objective of inventing and manufacturing new materials. Coursework covers topics including the thermodynamic, kinetic, and electronic properties of materials. \r\n\r\n**[Molecular Biology](/degrees/molecular-biology-degree/)** \r\nThe field of molecular biology is concerned with genetics, with the structure and the relationships between four molecules in the body: proteins, fats, carbohydrates, nucleic acids.", "content_markdown": "**[Neuroscience](/degrees/neuroscience-degree/)** \r\nNeuroscience is the study of the nervous system, and of the complex collection of interacting cells, known as the brain. \r\n\r\n**[Pharmacology](/degrees/pharmacology-degree/)** \r\nPharmacologists study how drugs and medicines work so they can be used in the right way. The work naturally involves an understanding of chemical and biological interactions. \r\n\r\n**[Pre-medicine](/degrees/pre-medicine-degree/) (Pre-med)** \r\nPre-med programs, designed to prepare students for medical school, include courses in general biology, molecular biology, biochemistry, and physics.", "content_html": "

Neuroscience
\nNeuroscience is the study of the nervous system, and of the complex collection of interacting cells, known as the brain.

\n

Pharmacology
\nPharmacologists study how drugs and medicines work so they can be used in the right way. The work naturally involves an understanding of chemical and biological interactions.

\n

Pre-medicine (Pre-med)
\nPre-med programs, designed to prepare students for medical school, include courses in general biology, molecular biology, biochemistry, and physics.

", "display_order": 3, "created_at": "2019-08-29T17:56:38.298592-07:00", "updated_at": "2021-12-08T14:16:58.410315-08:00"}, {"degree_id": 80, "page": 1, "title": "Skills You’ll Learn", "summary_markdown": "Individuals who study and work in the field of biomedical engineering develop a set of skills that are transferable to a variety of careers. Among these skills are: \r\n\r\n- Attention to detail \r\n- Investigation, research, and problem-solving \r\n- Technical savvy \r\n- Creativity \r\n- Product design, development, testing, and modification \r\n- Three-dimensional conceptual ability \r\n- Appreciation for product marketability \r\n- Communication developed through the need to collaborate with professionals in the medical, scientific, and engineering fields \r\n- Report writing and documentation", "content_markdown": "", "content_html": "", "display_order": 4, "created_at": "2019-08-29T17:56:38.300776-07:00", "updated_at": "2021-12-08T14:13:59.612578-08:00"}, {"degree_id": 80, "page": 1, "title": "What Can You Do with a Biomedical Engineering Degree?", "summary_markdown": "Biomedical engineering graduates find employment with: \r\n\r\n- Research hospitals and institutes \r\n- Universities \r\n- Government agencies \r\n- Medical and diagnostic equipment/device manufacturers \r\n\r\nTheir activities include: \r\n\r\n- Biomedical data analysis \r\n- Biomedical image analysis \r\n- Medical and diagnostic equipment/device design, manufacturing, testing, and training \r\n- Design and development of implant materials that can be safely used within the human body \r\n- Modeling and simulation of diseases and biological/physiological systems \r\n- Evaluation of healthcare regulations \r\n- Engineering and testing of sports equipment \r\n- Biomedical research and development; related software design and development\r\n- Teaching \r\n\r\nSome individuals with biomedical engineering backgrounds go on to medical school and become physicians.", "content_markdown": "", "content_html": "", "display_order": 5, "created_at": "2019-08-29T17:56:38.303140-07:00", "updated_at": "2022-03-25T09:58:31.754120-07:00"}], "degree_specializations": []}">

什么是生物医学工程学位?

生物医学工程专业的学生学习如何将工程原理和设计技能应用于生物和医学科学。他们研究该领域的四个主要领域:

  • 临床工程-专注于医院和其他医疗设施中使用的设备;该领域的工程师设计设备,培训他人使用设备,并维护设备
  • 医疗设备工程-涉及医疗设备的发明和操作,如人工心脏瓣膜,起搏器,糖尿病泵和假体
  • 〇医学影像生物医学工程师那些专注于这一领域的人发明和改进了可以观察人体的医疗设备,如核磁共振成像(MRI)和脑电图(EEG)机器
  • 组织工程-利用技术再生器官,创造新的器官,发明人造器官

简单地说,生物医学工程学位课程教学生如何通过创造拯救生命和改善生活的创新来解决医疗保健中的复杂问题。

程序选项

生物医学工程学士学位-四年
获得生物医学工程学士学位的课程从生物学、力学、物理、化学、微积分和系统分析与设计的基础课程开始。在他们学习的前三年,学生遵循核心课程,为他们最后一年的选修课程和该领域特定领域的专注做准备(在上面的部分中回顾这些领域,什么是生物医学工程学位?

以下是一些本科阶段的核心课程示例:

  • 生物医学工程中的沟通-工程领域的技术沟通技能
  • 数字计算-开发实用的生物医学软件系统
  • 生物医学设计-简介-设计过程:问题定义,生命周期设计,原型设计和评估
  • 生物医学设计中的人为因素——根据人的能力、需求和安全进行设计
  • 统计和实验设计-统计应用到生物医学实验,成像数据,和临床试验

以下是一些在学士课程高年级可以修的课程:

  • 原型、模拟和设计——通过生物医学工程中的小组项目进行设计、开发和原型制作
  • 生物医学工程设计-一个学生小组的长期设计项目
  • 医学成像物理-介绍医学成像的概念:成像的辐射,x射线,计算机断层扫描(CT),磁共振成像(MRI),超声,和其他
  • 体育工程-应用工程原理分析体育装备和运动员的表现

拥有生物医学工程学士学位的毕业生可以找到初级生物医学工程师、生物工程研究助理或医疗设备软件开发人员的工作。

生物医学工程硕士学位-两年制
在硕士阶段,生物医学工程专业的学生专注于一个特定的轨道或重点领域。他们也可能被要求完成一些先决条件和硕士的核心课程。

可能的先决条件:

  • 信号与系统-电气和计算机工程的基础知识,概率论,统计学和随机过程的概念
  • 分子生物学-细胞和分子生物学的基本介绍,细胞的生物化学,大分子的动力学
  • 一般应用数学-矩阵理论的基本概念

典型硕士核心课程:

  • 应用生物医学工程生理学(通常是多门课程)-细胞及其化学,组织和肌肉特性,心血管系统,呼吸系统,神经系统,听觉系统,视觉系统,运动系统,肾脏和胃肠道,循环的神经和神经内分泌控制
  • 生物医学工程的数学方法-用于解决应用生物医学工程问题的数学技术
  • 生物医学工程实践与创新-生理学、细胞和组织工程、生物医学仪器的实践实验和设计

成像跟踪样本课程:

  • 医学影像原理
  • 医疗仪器和设备
  • 医学图像处理
  • 生化传感器

仪表跟踪样本课程:

  • 医疗传感器和设备
  • 康复工程
  • 神经修复术
  • 心血管医学进展

组织工程跟踪样本课程:

  • 细胞与组织工程
  • 生物材料
  • 细胞与干细胞的生物力学
  • 骨科生物力学

拥有生物医学工程硕士学位的人通常会在生物医学/生物工程领域担任高级职位。

生物医学工程博士学位(4 - 6年)
生物医学工程博士学位课程的重点是在实验室或临床环境下的研究强化训练。博士候选人与教师和临床医生合作。除了完成硕士学位以外指定数量的学分外,他们还需要通过口头和书面资格考试,并成功捍卫他们的博士论文,该论文必须基于个人和原创研究。

生物医学工程博士毕业生通常会继续进行高级研究和/或在该领域担任领导角色。

学位与生物医学工程类似

生物技术
该领域的专业研究工程和生命科学,为农业、工业和环境行业创造新产品,如疫苗、药物、植物生长激素和食品添加剂。

工程技术
这个领域的专业学习许多工程专业的概念和设计技能。然而,他们的重点更多的是应用设计,而不是理论和数学导向。作为工程团队的一部分,技术人员可能会参与产品开发和测试,或者设计一种编程语言来改进由工程师设计的系统。

材料/制造工程
该专业的重点是研究金属、陶瓷和聚合物,如玻璃、塑料和橡胶,目标是发明和制造新材料。课程内容包括材料的热力学、动力学和电子性质。

分子生物学
分子生物学研究的是遗传学,研究人体内蛋白质、脂肪、碳水化合物和核酸这四种分子之间的结构和关系。

神经科学
神经科学是研究神经系统和相互作用的细胞的复杂集合,即大脑。

药理学
药理学家研究药物如何发挥作用,以便正确使用。这项工作自然涉及到对化学和生物相互作用的理解。

Pre-medicine(医学预科)
医学预科课程旨在为学生进入医学院做准备,课程包括普通生物学、分子生物学、生物化学和物理学。

你将学会的技能

在生物医学工程领域学习和工作的个人开发了一套可转移到各种职业的技能。这些技能包括:

  • 注重细节
  • 调查、研究和解决问题
  • 技术能力
  • 创造力
  • 产品设计、开发、测试和修改
  • 三维概念能力
  • 对产品适销性的欣赏
  • 由于需要与医学、科学和工程领域的专业人员合作,交流得以发展
  • 撰写报告和文件

拥有生物医学工程学位你能做什么?

生物医学工程毕业生找工作:

  • 研究型医院和研究所
  • 大学
  • 政府机构
  • 医疗和诊断设备/设备制造商

他们的活动包括:

  • 生物医学数据分析
  • 生物医学图像分析
  • 医疗和诊断设备/设备的设计、制造、测试和培训
  • 可在人体内安全使用的植入材料的设计和开发
  • 疾病和生物/生理系统的建模和模拟
  • 评估医疗保健法规
  • 运动器材的工程和测试
  • 生物医学研究和开发;相关软件设计与开发
  • 教学

一些拥有生物医学工程背景的人继续进入医学院并成为医生。

学费

看看哪些学校学费最贵,哪些学校学费最便宜。

了解学费